2H和18O池大小确定对总能量消耗计算的影响。

Obesity research Pub Date : 1995-03-01
D E Matthews, C D Gilker
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引用次数: 0

摘要

使用[2H,18O]水测量总能量消耗需要准确和精确地确定水体中2H和18O随时间的消失速率,并确定2H和18O池的大小。然而,水体同位素测定对能量消耗测定的影响往往被忽视。对于体内总水分本身的测量,在给药后采样体液之前的延迟变得很重要,唾液采样可以用来解决早期样品用于测定体内水分的时间。对于能量消耗测量本身,可以使用线性回归来定义初始稀释。由于不稳定氢的存在,氢示踪剂稀释成一个比身体水体本身大得多的池,因此必须对同位素池的大小进行修正。本文对可交换氢池的理论计算表明,氢池的大小小于体水池的3%,并提供了数据来支持这一观点。最后,综述了用于定义体水池空间对使用2H2(18)O计算能量消耗的贡献的两种方法。使用基于两个池空间的平均值的池大小限制了池大小误差对能源消耗计算的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of 2H and 18O pool size determinations on the calculation of total energy expenditure.

Measurement of total energy expenditure using [2H,18O] water requires both accurate and precise determination of the rates of disappearance of 2H and 18O from body water over time and determination of the 2H and 18O pool sizes. However, the impact of the isotopic determination of body water upon the determination of energy expenditure is often overlooked. For measurement of total body water per se, the delay after administration before sampling body fluids becomes important, and saliva sampling can be used to resolve the timing of early samples for body water determination. For energy expenditure measurement per se, linear regression can be used to define the initial dilution. Because the hydrogen tracer dilutes into a pool significantly larger than body water pool per se due to the presence of labile hydrogens, a correction to the isotope pool size must be applied. The theoretical calculations of the exchangeable hydrogen pool presented here suggest that the hydrogen pool size is < 3% greater than the body water pool and data are provided to support this idea. Finally, the two approaches used to define the body water pool space contribution to the calculation of energy expenditure using 2H2(18)O are reviewed. Using a pool size based upon the average of the two pool spaces limits the effect of pool size error in the calculation of energy expenditure.

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